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Multi-branch chemiluminescence–molecular imprinting sensor for sequential determination of carbofuran and omethoate in foodstuff

机译:多分支化学发光-分子印迹传感器可连续测定食品中的呋喃丹和氧化乐果

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A novel chemiluminescence-molecular imprinting (CLa€“MI) sensor was developed for the sequential determination of two pesticide residue components. One a€?Xa€? shaped multi-branch flow cell was used to pack two kinds of molecularly imprinted microspheres (MIMs) as the recognition device. The MIMs were synthesized by precipitation polymerization with carbofuran and omethoate as templates, acrylamide as the functional monomer and ethylene glycol dimethacrylate as the cross-linker. The simple operation of the method enhanced the analysis efficiency and the combination of CL and MI resulted in good sensitivity and high selectivity. The application of the CL-MI sensor has very wide prospects. Calibration graphs were obtained over the concentration ranges 4.0 ?— 10a?’8 to 9.0 ?— 10a?’6 g mLa?’1 and 1.0 ?— 10a?’7 to 9.0 ?— 10a?’6 g mLa?’1 for carbofuran and omethoate, respectively. The limits of detection were 2.5 ?— 10a?’8 g mLa?’1 for carbofuran and 4.2 ?— 10a?’8 g mLa?’1 for omethoate. The proposed method was successfully applied to the sequential determination of both compounds in foodstuff.
机译:开发了一种新颖的化学发光分子印迹(CLa?MI)传感器,用于顺序测定两种农药残留成分。一个?Xa ??形状多分支流动池用于包装两种分子印迹微球(MIM)作为识别装置。通过以呋喃丹和氧化乐果为模板,丙烯酰胺为功能单体,乙二醇二甲基丙烯酸酯为交联剂,通过沉淀聚合反应合成MIM。该方法的简单操作提高了分析效率,并且CL和MI的组合具有良好的灵敏度和高选择性。 CL-MI传感器的应用前景非常广阔。在浓度范围为4.0?-10a?'8至9.0?-10a?'6 g mLa?'1和1.0?-10a?'7至9.0?-10a?'6 g mLa?'1的浓度范围内获得校准图。克百威和氧化乐果。呋喃丹的检出限为2.5?-10a?'8 g mLa?'1,氧化乐果为4.2?-10a?'8 g mLa?'1。所提出的方法已成功应用于食品中两种化合物的顺序测定。

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